首页> 外文会议>Space Technology and Applications International Forum (STAIF 2002), Feb 3-6, 2002, Albuquerque, New Mexico >An Examination of Emerging In-Space Propulsion Concepts for One-Year Crewed Mars Missions
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An Examination of Emerging In-Space Propulsion Concepts for One-Year Crewed Mars Missions

机译:一年船员火星飞行任务的新兴太空推进概念研究

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A study was completed that provides a meaningful, even-handed, comparison assessment of promising candidate, in-space, exploration propulsion concepts to support emerging "near-term" crewed Mars mission applications. In particular, the study examined the mission performance feasibility and risk of a number of near-, mid-, and far-term in-space propulsion concepts to support crewed Mars missions starting in 2018 that can have the crewed portion of the mission performed in one year or less. This study used exploration propulsion system team technology specialist advocates to identify seven meaningful, representative mission architecture scenarios to "best" demonstrate the capability of such in-space propulsion technology options to support the near-term crewed Mars mission requirement. Additionally, a common set of top-level mission/system requirements was established for the study, which was incorporated in the assessment of all the mission options considered. Mission performance for abundant chemical (Ab-Chem), bimodal nuclear thermal rocket (BNTR), high power nuclear electric propulsion (HP-NEP), momentum tether/chemical, solar electric propulsion (SEP), solar electric propulsion/chemical (SEP-Chem) and Variable Specific Impulse Magnetoplasma Rocket (VASIMR) based missions were estimated for this quick trip, 2018 crewed Mars flight opportunity. Each of these mission options are characterized in terms of their overall mission performance capability, crewed mission duration, Initial Mass to Low Earth Orbit (IMLEO), which including dry and propellant weight required, overall mission time, number of flight elements (propulsion units/tank sets), and number of Earth-to-Orbit (ETO) vehicle launches. Potential top-level development, implementation, and operational issues/risks for each mission scenario considered are also identified.
机译:完成了一项研究,该研究为有前途的候选,太空探索推进概念提供了有意义的,公平的比较评估,以支持新出现的“近期”载人火星任务应用。这项研究特别研究了任务执行可行性和多种近期,中期和远期空间推进概念的风险,以支持从2018年开始的火星载人飞行任务,这些任务可以使任务的载人部分在一年或更短的时间。这项研究使用了探索推进系统团队的技术专家,他们提出了七个有意义的,具有代表性的任务架构方案,以“最好”地证明了这种空间推进技术选择的能力,可以支持近期的火星载人飞行任务。此外,为研究建立了一套通用的顶级任务/系统要求,这些要求已纳入对所有考虑的任务选择的评估中。丰富化学(Ab-Chem),双峰核热火箭(BNTR),高功率核电推进(HP-NEP),动量系链/化学,太阳能电推进(SEP),太阳能电推进/化学(SEP- Chem)和基于变比冲激磁浆火箭(VASIMR)的任务是为此次快速旅行估算的,2018年将为他们提供火星飞行的机会。这些任务选择中的每一个都具有以下特点:总体任务执行能力,乘员任务持续时间,初始质量到低地球轨道(IMLEO),其中包括所需的干重和推进剂重量,总体任务时间,飞行要素数量(推进装置/坦克组),以及发射到地球的轨道(ETO)车辆的数量。还确定了所考虑的每个任务方案的潜在高层开发,实施和操作问题/风险。

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